Quantification of the kinetics and thermodynamics of protein adsorption using atomic force microscopy
- 21 January 2005
- journal article
- research article
- Published by Wiley in Journal of Biomedical Materials Research Part A
- Vol. 72A (3) , 246-257
- https://doi.org/10.1002/jbm.a.30218
Abstract
Both in situ and ex situ methods for quantifying area fraction coverage of protein on a surface using atomic force microscopy were developed. The in situ method used a continuous fluid flow system to observe the kinetics of adsorption in real time. The ex situ method required immersing the sample in solution, drying the sample, and imaging in an ambient environment to obtain kinetic and isothermal data. These methods were developed using the plasma protein fibrinogen in a phosphate‐buffered saline solution on grade IV muscovite mica and highly ordered pyrolytic graphite (HOPG) substrates. Kinetic and quasiisothermal data were obtained and a Langmuir model was fit to the data. An adsorption rate constant of 2.2 × 10−4 mL · μg−1s−1 and a desorption rate constant of 8.3 × 10−5 s−1 were found on an HOPG surface. Completely irreversible adsorption was found on the mica surface with an adsorption rate constant of 2.7 × 10−4 mL · μg−1s−1. Additionally, protein conformation and assembly orientation on these surfaces were documented where fibrinogen on HOPG formed a network‐like structure, whereas fibrinogen on mica was more random. Also, nano‐topographical factors (ledges) were seen as sites of preferential adsorption. © 2005 Wiley Periodicals, Inc. J Biomed Mater Res 72A: 246–257, 2005Keywords
This publication has 28 references indexed in Scilit:
- Conformational Changes in the Plasma Protein Fibrinogen upon Adsorption to Graphite and Mica Investigated by Atomic Force MicroscopyLangmuir, 2003
- Oxide Films on Metallic Biomaterials: Myths, Facts and OpportunitiesMaterials Science Forum, 2003
- Electrochemical Studies of the Adsorption Behavior of Serum Proteins on TitaniumLangmuir, 2000
- Real-Time Observation of Plasma Protein Film Formation on Well-Defined Surfaces with Scanning Force MicroscopyLangmuir, 1998
- Structure and Adsorption Properties of FibrinogenPublished by American Chemical Society (ACS) ,1995
- Morphological Restoration of Atomic Force Microscopy ImagesLangmuir, 1995
- Probing the resolution limits and tip interactions of atomic force microscopy in the study of globular proteinsLangmuir, 1993
- Electrochemical Aspects of Thrombogenesis—Bioelectrochemistry Old and NewJournal of the Electrochemical Society, 1974
- Enzymatic and electrochemical polymerization of fibrinogenJournal of Biomedical Materials Research, 1969
- Significance of Electrochemical Phenomena in Intravascular ThrombosisNature, 1965